
Bhi05G001432 (gene) Wax gourd (B227) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.AGTACATACATTATTCCCTCTTTAATATATATACTCGAATTGAATACACTTTGAAGACATAGGTATAGAGAGTTATAACATCAAATGGAAGTTAAGCACAAAGAGTGTTCATCAAAGACGGAAGAAGATGGGCAAGCCATCGTCCAAATGTGGAGATACATATTCAGATTCACTGAAATGGCAGCAATAAAATGTGTAATAGACCTCAAAATTGCTGACATTATAGAAAGTTATGGAAGCCCAATGACATTGTCACACTTATCCTCTGCTTTAAATTGCTCTTCTTCAATCCTTCACCGCATCTTGAGATTCCTCATTCATCGTGGAATTTTCAAAGAAGAAACCATTGGTGAAAACCAGACAGCTTATTCACAAACACCTTTGTCTCGTTTGCTAGCCACCAATGTTGAGAGCACCATGGCTCCTTTGCTTTTACTGGAAACAAGTCCAGTGATGCTTGCAGCATGGCCTAACTTGAGTGCTCACTTAAAGAACAGTGAGACTTTTCCATTTGAGATTGCTCATGGAAAGGATTTGTGGAGCTATGCTGAAGCAAATCCTGAACATAATGTGTTGTTCAATGAGGCCATGGCTTGTTATGCTAAGGTGATTGCTTTTGCTATACTTGAAGGGTGTGGGGATATTTTTGATGGAGTTGGATGTTTGGTGGATGTTGGAGGAGGAAATGGAAGTACTTTGAGCATTTTGGTGAATGCTTGTCCATGGATGAAAGGTATTAACTTTGATCTTCCTCATGTTGTGTGTGCTTCCCCACAATATGAGAATGTGCAGCATGTTGCTGGTAACATGTTTGATTTTGTCCCAAAAGCTGATGTTGCTTTCCTCAAGGTTGGTATATTTATGTATATGTGTGTGTTATTTGTGTTTTGTTTGTTGAGGGTAAGGCTTTGTTGGGAATAGTTTTAAAATGGTTAAACTCATTTTGATATTTCCAAATCAATTATTCGATGTTTGATATTACAACTGTTAGAACATAATCTTTAGATCGCTAAAATTGATTTGGTATATGATTTTTTAAATCATGTTTTTGGAGTGATTTTGAATGTGACAAAAAAATTTTATTTTTTAATCTATGAGAGTTGGAACTTTGATCCACTATTTTGAAGGCTTTTTGTTCTCGTCCCATTGTTTGAACTCAAAGACAAAAAAATTTTAGTACTAAGCTCACCCAAAGATTCAAGACTTGGGACCTCTAAGCTGGTATGATTGAGAGACTCCAAGCTGTTGCCAACAAGACAACCTCTTGAGGTCAAAAAGTGAATTTTCACCATTTCAAATCAATGTAGTATCTCTTTTTCTCCGATTAATATTGATTTTTACTCATTTACTTGGATTTTGTACAAAATTTTAAAACTACAAGTGGGGTAGTGTCAAGACATCAGTTGGTAGTTTTTTGTTTTAAGTTTTTACAAATTAATTAAGCCTATAAACATTCCTTGCACTTCTAAATTTCTTGTTTTATCATCTACTTACCAAAAAAAAATATCAAAAATCAAATCAAGTTTTGGAAACTAAAAAATATATACTTTTCCAAAACTTATTTTTGTTTTTGAAATTTGACTAAGAATTCAATTCCTCTAATCTAAAGAAAGGTACAAACCGTGATTTAAAAGAAAAATTAAATTATTAATTATCAAACGAGACTTCAATATTTAAAATTTTTTTGAATTTTTGAGATTCAAATTGAGTGGATTCTACATGATTGGAATGACGAAGAATGTATTAAAATTTTGAAGAGATGTAAGGAAGCGATTCCAAAAAGTGGAGGGAAGGTGATAATTGTAGAAGCAATAATTGAAGAAAAGAGTGAAAACAAGAAGGTATCAGATGTGGGATTGATGTTTGACCTAGTGATGATGGCTCATACAAATAAAGGGAAGGAAAGAACAATTGAAGAATGGGCATTTGTTATCAATGCAGCTGGCTTCACTCGATACACCATTACACCCATTCAACCTATCCAATCACTTATTCAATGTTTCCCTTAAAACAGAAACAAACAACTTCTTCTTCTTGGATCACATATGCATTGATTATTGCATCCACTATTGTCTTTAATCTATTTCTACTACTTTGTCTCAATGTTTTTTTTTAATTGATTATGCCCTATGACCATTCCATACTTTTATTTGCCTAAGGCTTAATCTTCTAGCCAGTCCTTGGCCAGAAATTGTTTGATTTGTTTATCCAATTTTACTGAATGAAAAAATAAATAAATTAGATTAGAACCTTAATGCATGGCCATGGTAGTATTGCCATGATTAAGACTCCTTTGGAGGTTGTTTACAGAAAAATTTCTTAATGTGATGCTTGTTTTTAAAAACTAGACACAAGAATGTTGATTTTACAATTTTGCAGGAGAATTTATTTGTGCTTGAAAAGAGAGTATTATCTTTATCTTTGGACTGCTTTGGAAGTTTCTATGCATGATCGACCTTAATCAATTGAAACTAGTCCAATAAGTGAAGTCAAATACCTATATAATTATTTTATTCTCCTAAATTTTCTTACTATTTTACATTGTTTTAGTTTTTACCATCACGCATTTCTTTATTTCAATGTAAAATTAAGTGTTGGTATCTTCTACGTAATTAGGCGAATTAGAAAACTAGTCCTAAAGATGTTGCACAGCTTAATACTGATTATTTCAAAGCGAAGACTTAGGTAACTCGACCTTAATCTTAAGTTAACTCTTGTTTATTAGGAATTATCCTTAGATTTGCATGAGTGAAGGTTGACTCAACAACGCGGGCTTAATAAGCCTCCGATTTTAGGGGTGAGACTAGGTATATAGCTAAGGACATAGGGTGCAAAATGAAATTGGCTCCTACATGCTTTTAGGGATAGTAGAGAGGTCGTTCTCTTAAGTACTAACTTCGGGTCTTGAATAAGGGGCCCAGCCTCTCATTGGCCTGTGAGGGATTCGGTTTGGTGATTGGATCACAAACCAATTGTTCATTAGAGGATCAGTGGGACTTAAGAAATAACATGTAATCTTGGGATAAAACAGTGTTTGACCCAGTCGTTATTACTATAACCTGTGAAAGGTCAACTTACTAATTATGGTTAAATCAAGTGGACAAAAATATATATATATGGTGGGGGGAGTGCAACTACTAGGTTTTAGTGGAGTTACCTGGTAGACCTTAGAATAGCGTGATGAGAGAATTTGAAACATTGAAAATTGAATTAAAAGAATTAGTAATTATATATGATATAATTACACATTTAATTATTGAATTAAACAAAATTGGAGAACTGGATAATATTTAAATAGGATTTAAATATTAATTACATGAATAGAGATTAATGTTTGAGGAATTAGTGTTTAAATAATTTAGTATTTGATATTATACTATTTTAATTAATTAAATTGTTTAATTAAAATTAATTATTTTGATTTAAATTCAAAATTGGATTTATGAATTTTAAATATAAAATTGCATGCTTTTCAAATTTTAAATAATGATTTTTTCGAAAATCATTTTAAATTTGAAAAATCAAGTTAACGGGAAATTCCCACATGACCACCTTGATTTCACTAATAGTATGTTGAGTTGGTGTCAATATTTGATATAATATGGATTGCATGTTGTTTTAATAAAAAGAAAAGGAGAAATTGATTGAAGAGGATGATGCATTTTCAGAGTTCTCTCTCAGGTCCTTCCCACCAAGCTCAAATTCTCAAAAAATTCCCTCAAATTGACTCTCATTTTGCATCTCACAATCCAATTTAAGGGCCTAAAGAATATTAGGAAAGACCAAGTAGTGGTCTAGAAGGAATTACTGTGAAGATTGAAGCGAAATTCGAGGATTGAAGGAGTTCTTCAAAGGTATATTATCAACCCTATTTTAAATTTATAAACATGCTGGTTTAGTTGCTAAGGTTGATGAATTAGAGTGCTTAATGATTCTTATTACTTTTGCAAATTACATGCTAACTCCAACATTGTAGCATTTTTTCAAAGCTATCGTTGGTCTTTTTTTCTCTGTAGTGTAAGGGGAGCATTTGGTTTGTCGCCTTCACAAATCAATATATGGCCTCAAGCTGACCTCAAGCATGCTTCAAGATAATGGTTTGATAACTTCTCTCATTCATTGTTAGCCATTGGGTTCACTCAGCCTATGGCTGATTACTCTCTCTTTGTGAAAGGAACTAGTGAAAACTTTGTTGCCCTCTTATTATAAGTAGATGACATAGTACTTGCAAGTGTCTCTTCATCCATTATCAATTATTTAAAATAGCAACTGCACATTTCTTTTAAACTAAAAGATTTCTGTTCTCTTTGTTATTTCTTGGGCCTGGAGCTTGCTAGATTTTCGAAAGAGATTTTTCTCTCTCAACGAAATTATACCTTAAATTTTCTTAAAGAAAGAGGTTATCTAGCATCAAAACCTGCATCATTGCCTATGGACCCAAATCTGAAATTGTCTGCTTTGGATGGTGAGTTTCTCACAAACCCATTTGTCTATAGGTGCTTAATTGGGAGATTACTGTATCTTACAGTCTCAAGGCCTGACATACATTTTCTGTTCATACATTGAGCCAATTTGTTGTTCAACCTCGCAAAGCTCATGTTGCTCTTGCTCACAGTTTGCTTCGATATTGAAGAGTTTTCCTGACAGAGGACTTTTTCTTCAGGCTTCATCTTCTTTCCAGTTGCGTGCATTTGCTGATGCTGATAGAGCATCGTGTGTTGATTCACAAAAGTTTACCACTGGCTTTTGAATTTTTCTTGGTGAGACCTTAGTGTCTTGGAAAGCGAAGAAGCATACCACGATTTCACATTCTTCAGCTGAACTAGAGTATTGGGCACTTGCTATTCCAGCTATTGAACTTGTTTGGATATCTTAGTTGCTGATTGATTTTCAAATTACTGTTGAGCTTCCTTCGCTGATCTTTTGTGATAATAAGGTTGTTGTGCATATTGCTAGAAATCCTATGTTTCATGAAAGAACGAAGCATATTGAATTGGATTGTCATTTTCTTCGTGACAAGGTTGTTTGTGGGGAT AGTACATACATTATTCCCTCTTTAATATATATACTCGAATTGAATACACTTTGAAGACATAGGTATAGAGAGTTATAACATCAAATGGAAGTTAAGCACAAAGAGTGTTCATCAAAGACGGAAGAAGATGGGCAAGCCATCGTCCAAATGTGGAGATACATATTCAGATTCACTGAAATGGCAGCAATAAAATGTGTAATAGACCTCAAAATTGCTGACATTATAGAAAGTTATGGAAGCCCAATGACATTGTCACACTTATCCTCTGCTTTAAATTGCTCTTCTTCAATCCTTCACCGCATCTTGAGATTCCTCATTCATCGTGGAATTTTCAAAGAAGAAACCATTGGTGAAAACCAGACAGCTTATTCACAAACACCTTTGTCTCGTTTGCTAGCCACCAATGTTGAGAGCACCATGGCTCCTTTGCTTTTACTGGAAACAAGTCCAGTGATGCTTGCAGCATGGCCTAACTTGAGTGCTCACTTAAAGAACAGTGAGACTTTTCCATTTGAGATTGCTCATGGAAAGGATTTGTGGAGCTATGCTGAAGCAAATCCTGAACATAATGTGTTGTTCAATGAGGCCATGGCTTGTTATGCTAAGGTGATTGCTTTTGCTATACTTGAAGGGTGTGGGGATATTTTTGATGGAGTTGGATGTTTGGTGGATGTTGGAGGAGGAAATGGAAGTACTTTGAGCATTTTGGTGAATGCTTGTCCATGGATGAAAGGTATTAACTTTGATCTTCCTCATGTTGTGTGTGCTTCCCCACAATATGAGAATGTGCAGCATGTTGCTGGTAACATGTTTGATTTTGTCCCAAAAGCTGATGTTGCTTTCCTCAAGTGGATTCTACATGATTGGAATGACGAAGAATGTATTAAAATTTTGAAGAGATGTAAGGAAGCGATTCCAAAAAGTGGAGGGAAGGTGATAATTGTAGAAGCAATAATTGAAGAAAAGAGTGAAAACAAGAAGGTATCAGATGTGGGATTGATGTTTGACCTAGTGATGATGGCTCATACAAATAAAGGGAAGGAAAGAACAATTGAAGAATGGGCATTTGTTATCAATGCAGCTGGCTTCACTCGATACACCATTACACCCATTCAACCTATCCAATCACTTATTCAATGTTTCCCTTAAAACAGAAACAAACAACTTCTTCTTCTTGGATCACATATGCATTGATTATTGCATCCACTATTGTCTTTAATCTATTTCTACTACTTTGTCTCAATGTTTTTTTTTAATTGATTATGCCCTATGACCATTCCATACTTTTATTTGCCTAAGGCTTAATCTTCTAGCCAGTCCTTGGCCAGAAATTGTTTGATTTGTTTATCCAATTTTACTGAATGAAAAAATAAATAAATTAGATTAGAACCTTAATGCATGGCCATGGTAGTATTGCCATGATTAAGACTCCTTTGGAGGTTGTTTACAGAAAAATTTCTTAATGTGATGCTTGTTTTTAAAAACTAGACACAAGAATGTTGATTTTACAATTTTGCAGGAGAATTTATTTGTGCTTGAAAAGAGAGTATTATCTTTATCTTTGGACTGCTTTGGAAGTTTCTATGCATGATCGACCTTAATCAATTGAAACTAGTCCAATAAGTGAAGTCAAATACCTATATAATTATTTTATTCTCCTAAATTTTCTTACTATTTTACATTGTTTTAGTTTTTACCATCACGCATTTCTTTATTTCAATGTAAAATTAAGTGTTGGTATCTTCTACGTAATTAGGCGAATTAGAAAACTAGTCCTAAAGATGTTGCACAGCTTAATACTGATTATTTCAAAGCGAAGACTTAGGTAACTCGACCTTAATCTTAAGTTAACTCTTGTTTATTAGGAATTATCCTTAGATTTGCATGAGTGAAGGTTGACTCAACAACGCGGGCTTAATAAGCCTCCGATTTTAGGGGTGAGACTAGGTATATAGCTAAGGACATAGGGTGCAAAATGAAATTGGCTCCTACATGCTTTTAGGGATAGTAGAGAGGTCGTTCTCTTAAGTACTAACTTCGGGTCTTGAATAAGGGGCCCAGCCTCTCATTGGCCTGTGAGGGATTCGGTTTGGTGATTGGATCACAAACCAATTGTTCATTAGAGGATCAGTGGGACTTAAGAAATAACATGTAATCTTGGGATAAAACAGTGTTTGACCCAGTCGTTATTACTATAACCTGTGAAAGGTCAACTTACTAATTATGGTTAAATCAAGTGGACAAAAATATATATATATGGTGGGGGGAGTGCAACTACTAGGTTTTAGTGGAGTTACCTGGTAGACCTTAGAATAGCGTGATGAGAGAATTTGAAACATTGAAAATTGAATTAAAAGAATTAGTAATTATATATGATATAATTACACATTTAATTATTGAATTAAACAAAATTGGAGAACTGGATAATATTTAAATAGGATTTAAATATTAATTACATGAATAGAGATTAATGTTTGAGGAATTAGTGTTTAAATAATTTAGTATTTGATATTATACTATTTTAATTAATTAAATTGTTTAATTAAAATTAATTATTTTGATTTAAATTCAAAATTGGATTTATGAATTTTAAATATAAAATTGCATGCTTTTCAAATTTTAAATAATGATTTTTTCGAAAATCATTTTAAATTTGAAAAATCAAGTTAACGGGAAATTCCCACATGACCACCTTGATTTCACTAATAGTATGTTGAGTTGGTGTCAATATTTGATATAATATGGATTGCATGTTGTTTTAATAAAAAGAAAAGGAGAAATTGATTGAAGAGGATGATGCATTTTCAGAGTTCTCTCTCAGGTCCTTCCCACCAAGCTCAAATTCTCAAAAAATTCCCTCAAATTGACTCTCATTTTGCATCTCACAATCCAATTTAAGGGCCTAAAGAATATTAGGAAAGACCAAGTAGTGGTCTAGAAGGAATTACTGTGAAGATTGAAGCGAAATTCGAGGATTGAAGGAGTTCTTCAAAGTGTAAGGGGAGCATTTGGTTTGTCGCCTTCACAAATCAATATATGGCCTCAAGCTGACCTCAAGCATGCTTCAAGATAATGGTGCTTAATTGGGAGATTACTGTATCTTACAGTCTCAAGGCCTGACATACATTTTCTGTTCATACATTGAGCCAATTTGTTGTTCAACCTCGCAAAGCTCATGTTGCTCTTGCTCACAGTTTGCTTCGATATTGAAGAGTTTTCCTGACAGAGGACTTTTTCTTCAGGCTTCATCTTCTTTCCAGTTGCGTGCATTTGCTGATGCTGATAGAGCATCGTGTGTTGATTCACAAAAGTTTACCACTGGCTTTTGAATTTTTCTTGGTGAGACCTTAGTGTCTTGGAAAGCGAAGAAGCATACCACGATTTCACATTCTTCAGCTGAACTAGAGTATTGGGCACTTGCTATTCCAGCTATTGAACTTGTTTGGATATCTTAGTTGCTGATTGATTTTCAAATTACTGTTGAGCTTCCTTCGCTGATCTTTTGTGATAATAAGGTTGTTGTGCATATTGCTAGAAATCCTATGTTTCATGAAAGAACGAAGCATATTGAATTGGATTGTCATTTTCTTCGTGACAAGGTTGTTTGTGGGGAT ATGGAAGTTAAGCACAAAGAGTGTTCATCAAAGACGGAAGAAGATGGGCAAGCCATCGTCCAAATGTGGAGATACATATTCAGATTCACTGAAATGGCAGCAATAAAATGTGTAATAGACCTCAAAATTGCTGACATTATAGAAAGTTATGGAAGCCCAATGACATTGTCACACTTATCCTCTGCTTTAAATTGCTCTTCTTCAATCCTTCACCGCATCTTGAGATTCCTCATTCATCGTGGAATTTTCAAAGAAGAAACCATTGGTGAAAACCAGACAGCTTATTCACAAACACCTTTGTCTCGTTTGCTAGCCACCAATGTTGAGAGCACCATGGCTCCTTTGCTTTTACTGGAAACAAGTCCAGTGATGCTTGCAGCATGGCCTAACTTGAGTGCTCACTTAAAGAACAGTGAGACTTTTCCATTTGAGATTGCTCATGGAAAGGATTTGTGGAGCTATGCTGAAGCAAATCCTGAACATAATGTGTTGTTCAATGAGGCCATGGCTTGTTATGCTAAGGTGATTGCTTTTGCTATACTTGAAGGGTGTGGGGATATTTTTGATGGAGTTGGATGTTTGGTGGATGTTGGAGGAGGAAATGGAAGTACTTTGAGCATTTTGGTGAATGCTTGTCCATGGATGAAAGGTATTAACTTTGATCTTCCTCATGTTGTGTGTGCTTCCCCACAATATGAGAATGTGCAGCATGTTGCTGGTAACATGTTTGATTTTGTCCCAAAAGCTGATGTTGCTTTCCTCAAGTGGATTCTACATGATTGGAATGACGAAGAATGTATTAAAATTTTGAAGAGATGTAAGGAAGCGATTCCAAAAAGTGGAGGGAAGGTGATAATTGTAGAAGCAATAATTGAAGAAAAGAGTGAAAACAAGAAGGTATCAGATGTGGGATTGATGTTTGACCTAGTGATGATGGCTCATACAAATAAAGGGAAGGAAAGAACAATTGAAGAATGGGCATTTGTTATCAATGCAGCTGGCTTCACTCGATACACCATTACACCCATTCAACCTATCCAATCACTTATTCAATGTTTCCCTTAA MEVKHKECSSKTEEDGQAIVQMWRYIFRFTEMAAIKCVIDLKIADIIESYGSPMTLSHLSSALNCSSSILHRILRFLIHRGIFKEETIGENQTAYSQTPLSRLLATNVESTMAPLLLLETSPVMLAAWPNLSAHLKNSETFPFEIAHGKDLWSYAEANPEHNVLFNEAMACYAKVIAFAILEGCGDIFDGVGCLVDVGGGNGSTLSILVNACPWMKGINFDLPHVVCASPQYENVQHVAGNMFDFVPKADVAFLKWILHDWNDEECIKILKRCKEAIPKSGGKVIIVEAIIEEKSENKKVSDVGLMFDLVMMAHTNKGKERTIEEWAFVINAAGFTRYTITPIQPIQSLIQCFP Homology
BLAST of Bhi05G001432 vs. TAIR 10
Match: AT4G35160.1 (O-methyltransferase family protein ) HSP 1 Score: 333.2 bits (853), Expect = 2.6e-91 Identity = 169/354 (47.74%), Postives = 237/354 (66.95%), Query Frame = 0
BLAST of Bhi05G001432 vs. TAIR 10
Match: AT4G35150.1 (O-methyltransferase family protein ) HSP 1 Score: 293.1 bits (749), Expect = 3.0e-79 Identity = 153/349 (43.84%), Postives = 212/349 (60.74%), Query Frame = 0
BLAST of Bhi05G001432 vs. TAIR 10
Match: AT5G54160.1 (O-methyltransferase 1 ) HSP 1 Score: 190.3 bits (482), Expect = 2.7e-48 Identity = 110/311 (35.37%), Postives = 177/311 (56.91%), Query Frame = 0
BLAST of Bhi05G001432 vs. TAIR 10
Match: AT1G51990.2 (O-methyltransferase family protein ) HSP 1 Score: 179.1 bits (453), Expect = 6.2e-45 Identity = 103/294 (35.03%), Postives = 170/294 (57.82%), Query Frame = 0
BLAST of Bhi05G001432 vs. TAIR 10
Match: AT1G51990.1 (O-methyltransferase family protein ) HSP 1 Score: 178.7 bits (452), Expect = 8.1e-45 Identity = 103/294 (35.03%), Postives = 170/294 (57.82%), Query Frame = 0
BLAST of Bhi05G001432 vs. ExPASy Swiss-Prot
Match: Q9T003 (Acetylserotonin O-methyltransferase OS=Arabidopsis thaliana OX=3702 GN=ASMT PE=1 SV=1) HSP 1 Score: 333.2 bits (853), Expect = 3.6e-90 Identity = 169/354 (47.74%), Postives = 237/354 (66.95%), Query Frame = 0
BLAST of Bhi05G001432 vs. ExPASy Swiss-Prot
Match: Q7XB10 (3'-hydroxy-N-methyl-(S)-coclaurine 4'-O-methyltransferase 2 OS=Papaver somniferum OX=3469 GN=4'OMT2 PE=1 SV=1) HSP 1 Score: 273.1 bits (697), Expect = 4.5e-72 Identity = 139/338 (41.12%), Postives = 208/338 (61.54%), Query Frame = 0
BLAST of Bhi05G001432 vs. ExPASy Swiss-Prot
Match: Q9LEL6 ((RS)-norcoclaurine 6-O-methyltransferase OS=Coptis japonica OX=3442 PE=1 SV=1) HSP 1 Score: 269.6 bits (688), Expect = 4.9e-71 Identity = 148/357 (41.46%), Postives = 216/357 (60.50%), Query Frame = 0
BLAST of Bhi05G001432 vs. ExPASy Swiss-Prot
Match: Q6WUC2 ((R,S)-reticuline 7-O-methyltransferase OS=Papaver somniferum OX=3469 GN=7OMT PE=1 SV=1) HSP 1 Score: 266.2 bits (679), Expect = 5.5e-70 Identity = 144/352 (40.91%), Postives = 209/352 (59.38%), Query Frame = 0
BLAST of Bhi05G001432 vs. ExPASy Swiss-Prot
Match: Q6VMW0 (8-hydroxyquercetin 8-O-methyltransferase OS=Mentha piperita OX=34256 GN=OMT2 PE=1 SV=1) HSP 1 Score: 265.0 bits (676), Expect = 1.2e-69 Identity = 146/360 (40.56%), Postives = 211/360 (58.61%), Query Frame = 0
BLAST of Bhi05G001432 vs. ExPASy TrEMBL
Match: A0A5A7TGF8 ((RS)-norcoclaurine 6-O-methyltransferase-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold142G004180 PE=3 SV=1) HSP 1 Score: 619.8 bits (1597), Expect = 7.2e-174 Identity = 304/358 (84.92%), Postives = 328/358 (91.62%), Query Frame = 0
BLAST of Bhi05G001432 vs. ExPASy TrEMBL
Match: A0A0A0K629 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_7G018730 PE=3 SV=1) HSP 1 Score: 618.2 bits (1593), Expect = 2.1e-173 Identity = 303/357 (84.87%), Postives = 329/357 (92.16%), Query Frame = 0
BLAST of Bhi05G001432 vs. ExPASy TrEMBL
Match: A0A1S3BJE6 ((RS)-norcoclaurine 6-O-methyltransferase-like OS=Cucumis melo OX=3656 GN=LOC103490250 PE=3 SV=1) HSP 1 Score: 617.5 bits (1591), Expect = 3.6e-173 Identity = 303/358 (84.64%), Postives = 327/358 (91.34%), Query Frame = 0
BLAST of Bhi05G001432 vs. ExPASy TrEMBL
Match: A0A6J1GNG0 ((RS)-norcoclaurine 6-O-methyltransferase-like OS=Cucurbita moschata OX=3662 GN=LOC111455537 PE=3 SV=1) HSP 1 Score: 550.4 bits (1417), Expect = 5.3e-153 Identity = 269/366 (73.50%), Postives = 313/366 (85.52%), Query Frame = 0
BLAST of Bhi05G001432 vs. ExPASy TrEMBL
Match: A0A6J1EN16 ((R,S)-reticuline 7-O-methyltransferase-like OS=Cucurbita moschata OX=3662 GN=LOC111435052 PE=3 SV=1) HSP 1 Score: 503.8 bits (1296), Expect = 5.7e-139 Identity = 245/355 (69.01%), Postives = 290/355 (81.69%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Wax gourd (B227) v1
Date Performed: 2021-10-22 Position : 0 Zoom : x 1
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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